Camera optical lens including seven lenses of +−−+−+− refractive powers
Abstract
Provided is a camera optical lens including, sequentially from an object side to an image side: a first lens having a positive refractive power; a second lens having a negative refractive power; a third lens having a negative refractive power; a fourth lens having a positive refractive power; a fifth lens having a negative refractive power; a sixth lens having a positive refractive power; and a seventh lens having a negative refractive power. The camera optical lens satisfies following conditions: 0.85≤f1/f≤1.00; 1.50≤f3/f2≤5.00; and 3.00≤R7/d7≤7.00. The camera optical lens can achieve high optical performance while satisfying design requirements for ultra-thin, wide-angle lenses having large apertures.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1. A camera optical lens, comprising, sequentially from an object side to an image side:
a first lens having a positive refractive power;
a second lens having a negative refractive power;
a third lens having a negative refractive power;
a fourth lens having a positive refractive power;
a fifth lens having a negative refractive power;
a sixth lens having a positive refractive power; and
a seventh lens having a negative refractive power,
wherein the camera optical lens satisfies following conditions:
0.85≤f1/f≤1.00;
1.50≤f3/f2≤5.00; and
3.00≤R7/d7≤7.00,
where
f denotes a focal length of the camera optical lens;
f1 denotes a focal length of the first lens;
f2 denotes a focal length of the second lens;
f3 denotes a focal length of the third lens;
R7 denotes a curvature radius of an object side surface of the fourth lens; and
d7 denotes an on-axis thickness of the fourth lens.
2. The camera optical lens as described in claim 1 , further satisfying a following condition:
0.35≤(R3+R4)/(R3−R4)≤2.60,
where
R3 denotes a curvature radius of an object side surface of the second lens; and
R4 denotes a curvature radius of an image side surface of the second lens.
3. The camera optical lens as described in claim 1 , further satisfying a following condition:
0.85≤d6/d5≤1.50,
where
d5 denotes an on-axis thickness of the third lens; and
d6 denotes an on-axis distance from an image side surface of the third lens to the object side surface of the fourth lens.
4. The camera optical lens as described in claim 1 , further satisfying following conditions:
−1.86≤(R1+R2)/(R1−R2)≤−0.56; and
0.05≤d1/TTL≤0.17,
where
R1 denotes a curvature radius of an object side surface of the first lens;
R2 denotes a curvature radius of an image side surface of the first lens;
d1 denotes an on-axis thickness of the first lens; and
TTL denotes a total optical length from the object side surface of the first lens to an image plane of the camera optical lens along an optic axis.
5. The camera optical lens as described in claim 1 , further satisfying following conditions:
−4.71≤f2/f≤−1.06; and
0.02≤d3/TTL≤0.08,
where
d3 denotes an on-axis thickness of the second lens; and
TTL denotes a total optical length from an object side surface of the first lens to an image plane of the camera optical lens along an optic axis.
6. The camera optical lens as described in claim 1 , further satisfying following conditions:
−15.81≤f3/f≤−2.44;
4.07≤(R5+R6)/(R5−R6)≤23.24; and
0.02≤d5/TTL≤0.06,
where
R5 denotes a curvature radius of an object side surface of the third lens;
R6 denotes a curvature radius of an image side surface of the third lens;
d5 denotes an on-axis thickness of the third lens; and
TTL denotes a total optical length from an object side surface of the first lens to an image plane of the camera optical lens along an optic axis.
7. The camera optical lens as described in claim 1 , further satisfying following conditions:
0.57≤f4/f≤2.80;
−1.27≤(R7+R8)/(R7−R8)≤−0.34; and
0.07≤d7/TTL≤0.29,
where
f4 denotes a focal length of the fourth lens;
R8 denotes a curvature radius of an image side surface of the fourth lens; and
TTL denotes a total optical length from an object side surface of the first lens to an image plane of the camera optical lens along an optic axis.
8. The camera optical lens as described in claim 1 , further satisfying following conditions:
−5.85≤f5/f≤−1.50;
−14.35≤(R9+R10)/(R9−R10)≤−3.34; and
0.02≤d9/TTL≤0.08,
where
f5 denotes a focal length of the fifth lens;
R9 denotes a curvature radius of an object side surface of the fifth lens;
R10 denotes a curvature radius of an image side surface of the fifth lens;
d9 denotes an on-axis thickness of the fifth lens; and
TTL denotes a total optical length from an object side surface of the first lens to an image plane of the camera optical lens along an optic axis.
9. The camera optical lens as described in claim 1 , further satisfying following conditions:
0.69≤f6/f≤2.66;
−5.87≤(R11+R12)/(R11−R12)≤−1.68; and
0.04≤d11/TTL≤0.13,
where
f6 denotes a focal length of the sixth lens;
R11 denotes a curvature radius of an object side surface of the sixth lens;
R12 denotes a curvature radius of an image side surface of the sixth lens;
d11 denotes an on-axis thickness of the sixth lens; and
TTL denotes a total optical length from an object side surface of the first lens to an image plane of the camera optical lens along an optic axis.
10. The camera optical lens as described in claim 1 , further satisfying following conditions:
−2.08≤f7/f≤−0.65;
0.74≤(R13+R14)/(R13−R14)≤2.65; and
0.05≤d13/TTL≤0.14,
where
f7 denotes a focal length of the seventh lens;
R13 denotes a curvature radius of an object side surface of the seventh lens;
R14 denotes a curvature radius of an image side surface of the seventh lens;
d13 denotes an on-axis thickness of the seventh lens; and
TTL denotes a total optical length from an object side surface of the first lens to an image plane of the camera optical lens along an optic axis.Join the waitlist — get patent alerts
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